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首页> 外文期刊>Beilstein journal of organic chemistry. >Synthesis of C-glycosyl phosphonate derivatives of 4-amino-4-deoxy-α-?-arabinose
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Synthesis of C-glycosyl phosphonate derivatives of 4-amino-4-deoxy-α-?-arabinose

机译:4-氨基-4-脱氧-α - 阿拉伯糖的C-糖基膦酸酯衍生物的合成 - 阿拉伯糖

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The incorporation of basic substituents into the structurally conserved domains of cell wall lipopolysaccharides has been identified as a major mechanism contributing to antimicrobial resistance of Gram-negative pathogenic bacteria. Inhibition of the corresponding enzymatic steps, specifically the transfer of 4-amino-4-deoxy-?-arabinose, would thus restore the activity of cationic antimicrobial peptides and several antimicrobial drugs. C-glycosidically-linked phospholipid derivatives of 4-amino-4-deoxy-?-arabinose have been prepared as hydrolytically stable and chain-shortened analogues of the native undecaprenyl donor. The C-phosphonate unit was installed via a Wittig reaction of benzyl-protected 1,5-arabinonic acid lactone with the lithium salt of dimethyl methylphosphonate followed by an elimination step of the resulting hemiketal, leading to the corresponding exo- and endo-glycal derivatives. The ensuing selective monodemethylation and hydrogenolysis of the benzyl groups and reduction of the 4-azido group gave the α-?-anomeric arabino- and ribo-configured methyl phosphonate esters. In addition, the monomethyl phosphonate glycal intermediates were converted into n-octyl derivatives followed by subsequent selective removal of the methyl phosphonate ester group and hydrogenation to give the octylphosphono derivatives. These intermediates will be of value for their future conversion into transition state analogues as well as for the introduction of various lipid extensions at the anomeric phosphonate moiety.
机译:已鉴定为细胞壁脂多糖的结构保守结构域中的基本取代基作为革兰阴性致病细菌的抗微生物抗性的主要机制。因此,抑制相应的酶促步骤,特别是4-氨基-4-脱氧 - α - 阿拉伯糖的转移,因此将恢复阳离子抗微生物肽和几种抗菌药物的活性。 4-氨基-4-脱氧 - α - 阿拉伯糖的C-糖苷地连接的磷脂衍生物被制备为天然未赤枝蛋白的水解稳定和链条缩短的类似物。通过苄基保护的1,5-阿拉伯酸内酯的Wittig反应与二甲基羟基膦酸锂的锂盐的硅烷酸盐进行安装,接着是由此产生的半幂的消除步骤,导致相应的外部和内甘露甘露糖衍生物。随后的选择性单甲基化和苄基的氢解和4-α-唑基的还原给予α - α - α-α-α-亚烷基甲基甲基膦酸酯。此外,将单甲基膦酸酯甘露体中间体转化为正辛基衍生物,然后进行后续选择性除去甲基膦酸酯基团和氢化,得到辛基膦衍生物。这些中间体将是它们未来转化为转变状态类似物的价值,以及引入异常膦酸盐部分的各种脂质延伸。

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